Paper
28 September 2022 The failure mechanism and failure protection of 3A21 aluminum alloy under random vibration and shock loading
Qiongjiao Wang, Dan Li, Yonghui Fu, Yifan Zhang
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Proceedings Volume 12339, Second International Conference on Cloud Computing and Mechatronic Engineering (I3CME 2022); 123391X (2022) https://doi.org/10.1117/12.2654946
Event: Second International Conference on Cloud Computing and Mechatronic Engineering (I3CME 2022), 2022, Chendu, China
Abstract
To reveal the failure mechanism under random vibration and shock loading, the typical spacecraft electronic equipment of 3A21 aluminum alloy was tested in 16.1g of RMS acceleration by using electric shaker and 1600g of pyroshock magnitude by using pendulum shock equipment. And the fracture specimens were analyzed by scanning electron microscopy (SEM). The results show that 3A21 aluminum alloy exhibits brittle fracture followed by fatigue fracture under random vibration and brittle fracture directly under shock loading. To study the failure protection under random vibration and shock loading of 3A21 aluminum alloy, the good agreement has been achieved in the dynamic response between the numerical simulation and tests, which verifies the method of response spectrum analysis (RSA) under random vibration and time history waveform synthesis (WAVSYN) under shock loading. The maximum relative error was 14.3%. Then the equipment was optimally designed based on the numerical simulation, and the feasibility of the optimization method was verified by dynamic loading tests.
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Qiongjiao Wang, Dan Li, Yonghui Fu, and Yifan Zhang "The failure mechanism and failure protection of 3A21 aluminum alloy under random vibration and shock loading", Proc. SPIE 12339, Second International Conference on Cloud Computing and Mechatronic Engineering (I3CME 2022), 123391X (28 September 2022); https://doi.org/10.1117/12.2654946
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KEYWORDS
Numerical simulations

Aluminum

Safety

Failure analysis

Reliability

Scanning electron microscopy

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